The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: BAO and RSD measurements from anisotropic clustering analysis of the Quasar Sample in configuration space between redshift 0.8 and 2.2
Jiamin Hou, Ariel G. S\'anchez, Ashley J. Ross, Alex Smith, Richard, Neveux, Julian Bautista, Etienne Burtin, Cheng Zhao, Rom\'an Scoccimarro,, Kyle S. Dawson, Arnaud de Mattia, Axel de la Macorra, H\'elion du Mas des, Bourboux, Daniel J.Eisenstein, H\'ector Gil-Mar\'in

TL;DR
This paper presents anisotropic clustering measurements of quasars from SDSS-IV eBOSS DR16, providing improved BAO and RSD constraints at redshift 1.48, using configuration space analysis and mock simulations for validation.
Contribution
It introduces a full-shape anisotropic clustering analysis of quasars in configuration space, doubling the sample size and survey area, and achieves more precise BAO and RSD measurements compared to previous results.
Findings
Measured BAO distance parameters with ~2.8% precision.
Determined growth rate fσ8 at z=1.48 with ~11% uncertainty.
Reduced uncertainties on distance and growth rate by 45% and 30%, respectively.
Abstract
We measure the anisotropic clustering of the quasar sample from Data Release 16 (DR16) of the Sloan Digital Sky Survey IV extended Baryon Oscillation Spectroscopic Survey (eBOSS). A sample of spectroscopically confirmed quasars between redshift are used as tracers of the underlying dark matter field. In comparison with DR14 sample, the final sample doubles the number of objects as well as the survey area. In this paper, we present the analysis in configuration space by measuring the two-point correlation function and decompose using the Legendre polynomials. For the full-shape analysis of the Legendre multipole moments, we measure the BAO distance and the growth rate of the cosmic structure. At an effective redshift of , we measure the comoving angular diameter distance , the Hubble distance…
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